IP Library Granted Patent US 10,239,771
Granted Patent B2
US 10,239,771 · App. 16/041,700 · Granted Mar 26, 2019

Electrocoagulation unit

Inventors: Gregory K. Norman (Katy, TX); Xandra Joines Turner (Sugar Land, TX); Joshua Hebert (Houston, TX); Jason Michael Kirk (Katy, TX)
Assignee: Water Vision, Inc.
C02F1/463C02F1/46109C02F9/00C02F2001/46133C02F2101/20C02F2103/365C02F2201/46
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Quick Facts
Patent No.
US 10,239,771
App. No.
16/041,700
Granted
Mar 26, 2019
Kind
B2
Abstract

An electrocoagulation unit that may include an outer shell, and a set of electrodes disposed within the inner housing. Each electrode is separated from an adjacent electrode by an electrode gap spacing. The outer shell may further include a fluid inlet; a fluid outlet; a first busbar opening with a first busbar gland associated therewith.

Claims (43)

1. An electrocoagulation unit comprising:

an outer shell, the outer shell further comprising:

a fluid inlet;

a fluid outlet;

a first busbar opening;

a second busbar opening;

an inner housing coupled with the outer shell;

a set of electrodes disposed within the inner housing, each electrode being separated from an adjacent electrode by an electrode gap;

a first pressure gland assembly sealingly coupled with the first busbar opening, the first pressure gland assembly further comprising a first gland power bar disposed within a first gland body;

a second pressure gland assembly sealingly coupled with the second busbar opening, the second pressure gland assembly further comprising a second gland power bar disposed within a second gland body;

a first busbar coupled with the first gland power bar, and further coupled with every other electrode of the set of electrodes;

a second busbar coupled with the second gland power bar, and further coupled in an alternating manner with every electrode of the set of electrodes not coupled with the first busbar; and

a plurality of sacrificial media disposed between each respective adjacent pair of electrodes.

2. The electrocoagulation unit of claim 1 , wherein an at least one of the set of electrodes comprises a cumulative surface area in a range of 1000 inches to 2000 inches, and an electrode thickness in a thickness range of 0.1 inches to 2.5 inches.

3. The electrocoagulation unit of claim 1 , wherein the electrode gap between an at least two of the set of electrodes comprises a distance of 4 inches to 8 inches.

4. The electrocoagulation unit of claim 1 , wherein each of the set of electrodes comprises a cumulative surface area in a range of 1000 inches to 2000 inches, and an electrode thickness in a thickness range of 0.1 inches to 2.5 inches, and wherein the electrode gap between each adjacent electrode of the set of electrodes comprises a distance of 4 inches to 8 inches.

5. The electrocoagulation unit of claim 1 , wherein the sacrificial media comprises a set of perforations in a range of 3 perforations to 9 perforations, wherein a media thickness of the sacrificial media is in a range of 0.001 inches to 0.005 inches.

6. The electrocoagulation unit of claim 1 , wherein each of the first busbar and the second busbar comprises a main busbar body made of conductive metal, wherein at least one of the main busbar bodies comprises a first surface portion coated with a dielectric material, and a second surface portion coated with a conductive material.

7. The electrocoagulation unit of claim 6 , wherein an at least one electrode of the set of electrodes comprises a main electrode body made of platinum, and an outer electrode surface coating selected from a group consisting of any noble metal, wherein the at least one electrode is coupled with its respective busbar via a jumper, and wherein the jumper comprises a first jumper surface portion coated with the dielectric material, and a second jumper surface portion coated with the conductive material.

8. The electrocoagulation unit of claim 1 , wherein an at least one electrode of the set of electrodes comprises a main electrode body made of platinum, and an outer electrode surface coating selected from a group consisting of any noble metal.

9. An electrocoagulation unit comprising:

an outer shell, the outer shell comprising:

a first busbar opening;

an inner housing within the outer shell;

a set of electrodes disposed within the inner housing, each electrode being separated from an adjacent electrode by an electrode gap;

a first pressure gland assembly sealingly coupled with the first busbar opening, the first pressure gland assembly further comprising a first gland power bar disposed within a first gland body;

a first busbar coupled with the first gland power bar, and further coupled with every other electrode of the set of electrodes; and

a plurality of sacrificial media disposed between each respective adjacent pair of electrodes.

10. The electrocoagulation unit of claim 9 , wherein an at least one of the set of electrodes comprises a cumulative surface area in a range of 1000 inches to 2000 inches, and an electrode thickness in a thickness range of 0.1 inches to 2.5 inches.

11. The electrocoagulation unit of claim 10 , the electrode gap between an at least two of the set of electrodes comprises a distance of 4 inches to 8 inches.

12. The electrocoagulation unit of claim 11 , wherein each of the set of electrodes comprises a cumulative surface area in a range of 1000 inches to 2000 inches, wherein the sacrificial media comprises a set of perforations in a range of 3 perforations to 9 perforations, and wherein a media thickness of the sacrificial media is in a range of 0.001 inches to 0.005 inches.

13. The electrocoagulation unit of claim 11 , wherein the first busbar comprises a main busbar body made of a conductive metal, and further comprises a first surface portion coated with a dielectric material, and a second surface portion coated with a conductive material.

14. The electrocoagulation unit of 13 , wherein an at least one electrode of the set of electrodes comprises a main electrode body made of platinum, and an outer electrode surface coating selected from a group consisting of any noble metal, wherein the at least one electrode is coupled with the first busbar via a jumper, and wherein the jumper comprises a first jumper surface portion coated with the dielectric material, and a second jumper surface portion coated with the conductive material.

15. The electrocoagulation unit of claim 9 , the unit further comprising: a fluid inlet; a fluid outlet; a second busbar opening, a second pressure gland assembly sealingly coupled with the second busbar opening, the second pressure gland assembly further comprising a second gland power bar disposed within a second gland body; and a second busbar coupled with the second gland power bar, and further coupled in an alternating manner with every electrode of the set of electrodes not coupled with the first busbar, wherein a media thickness of the sacrificial media is in a range of 0.001 inches to 0.01 inches.

16. An electrocoagulation unit comprising:

an outer shell comprising a first busbar opening;

an inner housing within the outer shell;

a set of 4 to 10 electrodes disposed within the inner housing, each electrode being separated from an adjacent electrode by an electrode gap in a range of 5 inches to 7 inches;

a first pressure gland assembly sealingly coupled with the first busbar opening, the first pressure gland assembly further comprising a first gland power bar disposed within a first gland body;

a first busbar coupled with the first gland power bar, and further coupled with every other electrode of the set of electrodes; and

a plurality of sacrificial media disposed between each respective adjacent pair of electrodes, wherein each of the set of electrodes comprises a cumulative surface area in a range of 1000 inches to 2000 inches, and wherein the first busbar comprises a main busbar body made of a conductive metal, and further comprises a first surface portion coated with a dielectric material, and a second surface portion coated with a conductive material.

17. The electrocoagulation unit of 16 , wherein an at least one electrode of the set of electrodes comprises a main electrode body made of platinum, and an outer electrode surface coating selected from a group consisting of any noble metal, wherein the at least one electrode is coupled with the first busbar via a jumper, and wherein the jumper comprises a first jumper surface portion coated with the dielectric material, and a second jumper surface portion coated with the conductive material.

18. The electrocoagulation unit of claim 16 , the outer shell further comprising: a fluid inlet; a fluid outlet; a second busbar opening, wherein a second pressure gland assembly is sealingly coupled with the second busbar opening, the second pressure gland assembly further comprising a second gland power bar disposed within a second gland body; and a second busbar coupled with the second gland power bar, and further coupled in an alternating manner with every electrode of the set of electrodes not coupled with the first busbar.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2018
From: NORMAN, GREGORY K.; TURNER, XANDRA JOINES; HEBERT, JOSHUA; KIRK, JASON MICHAEL
To: WATER VISION, INC.
Reel/Frame 046611/0918 →
Continuity (2)
Provisional Application 62535564 · Jul 21, 2017
Related Publication 20190023589A1 · Jan 24, 2019